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VERY LARGE ARRAY OBSERVATIONS OF AMMONIA IN INFRARED-DARK CLOUDS. II. INTERNAL KINEMATICS

机译:红外暗云中氨气的大型阵列观测。二。内部运动学

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Infrared-dark clouds (IRDCs) are believed to be the birthplaces of rich clusters and thus contain the earliest phases of high-mass star formation. We use the Green Bank Telescope and Very Large Array maps of ammonia (NH3) in six IRDCs to measure their column density and temperature structure (Paper 1), and here, we investigate the kinematic structure and energy content. We find that IRDCs overall display organized velocity fields, with only localized disruptions due to embedded star formation. The local effects seen in NH3 emission are not high-velocity outflows but rather moderate (few?km?s–1) increases in the linewidth that exhibit maxima near or coincident with the mid-infrared emission tracing protostars. These linewidth enhancements could be the result of infall or (hidden in NH3 emission) outflow. Not only is the kinetic energy content insufficient to support the IRDCs against collapse, but also the spatial energy distribution is inconsistent with a scenario of turbulent cloud support. We conclude that the velocity signatures of the IRDCs in our sample are due to active collapse and fragmentation, in some cases augmented by local feedback from stars.
机译:红外暗云(IRDC)被认为是富星团的发源地,因此包含了高质量恒星形成的最早阶段。我们使用Green Bank望远镜和六个IRDC中的氨(NH3)的超大型阵列图来测量其列密度和温度结构(论文1),然后在这里研究运动学结构和能量含量。我们发现IRDC总体上显示有组织的速度场,仅存在由于嵌入恒星形成而引起的局部扰动。在NH3排放中看到的局部效应不是高速流出,而是线宽的中等(几?km?s–1)增加,表现出最大值接近或与中红外排放追踪原恒星重合。这些线宽增强可能是由于流入或(隐藏在NH3排放中)流出的结果。动能含量不仅不足以支持IRDC抵抗坍塌,而且空间能量分布与湍流云的支持情况不一致。我们得出结论,我们样本中IRDC的速度特征是由于活跃的坍塌和破碎,在某些情况下还受到恒星局部反馈的影响。

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